双四元数を用いたRRT*経路計画による衛星ランデブー・ドッキング
A Dual Quaternion based RRT* Path Planning Approach for Satellite Rendezvous and Docking
双四元数表現をRRT*に組み込み、SE(3)上の滑らかで衝突のない6自由度姿勢軌道を生成するサンプリングベースの運動計画手法を提案し、障害物回避性能を標準RRT*と比較した。
著者: Ana Stankovic, Mohamed Khalil Ben-Larbi, Wolfgang H. Müller
分類: cs.RO
原文アブストラクト
This paper proposes a sampling-based motion planner that employs a dual quaternion representation to generate smooth, collision-free six-degree-of-freedom pose trajectories for satellite rendezvous and docking under keep-out zone constraints. The proposed planner integrates the dual quaternion algebra directly into an RRT* framework, thereby enabling natural screw motion interpolation in SE(3). The dual quaternion-based RRT* has been implemented in Python and demonstrated on a representative multi-obstacle scenario. A comparison with a standard RRT* using separate translation and quaternion steering highlights the enhanced pose continuity and obstacle avoidance of the proposed method. The present approach is purely kinematic in nature and does not take into account relative orbital dynamics. Consequently, the resulting path provides a preliminary estimate for a subsequent optimisation-based trajectory planner, which will refine the motion with dynamic constraints for the purpose of practical satellite rendezvous and docking missions.